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Electrochemical deposition of zinc from zinc oxide in 2:1 urea/choline chloride ionic liquid

机译:在2:1尿素/氯化胆碱离子液体中从氧化锌中电化学沉积锌

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To overcome the major difficulties involved in the electrodeposition of zinc (Zn) from traditional aqueous solvents, it is important to discover novel electrolytes that are eco-friendly and highly efficient. Zinc oxide (ZnO) was dissolved in eutectic mixture of urea/choline chloride (2:1 molar ratio) at different temperatures (343-373K). Electrochemical measurements confirmed that the onset reduction potential for Zn2+ to Zn occur at similar to-1.05V using cyclic voltammetry. A linear relationship was obtained between cathodic peak current and square root of scan rate, thus indicating the reaction was governed by diffusion-controlled mechanism. Electrodeposition of Zn followed three dimensional (3D) instantaneous nucleation and growth mechanism for various reduction potentials. Scanning electron microscopy (SEM) images showed the formation of hexagonal-shaped Zn particles at lower applied potentials, while plate-like structures of Zn metal were deposited at higher applied potentials. The X-ray diffraction (XRD) and energy dispersive spectroscopy (EDS) analysis confirmed the presence of high-pure Zn metal electrodeposits on Cu cathode. (C) 2014 Elsevier Ltd. All rights reserved.
机译:为了克服传统水溶剂中电沉积锌(Zn)所涉及的主要困难,重要的是发现一种环保且高效的新型电解质。在不同温度(343-373K)下,将氧化锌(ZnO)溶解在尿素/氯化胆碱的共晶混合物(摩尔比为2:1)中。电化学测量结果证实,使用循环伏安法可将Zn2 +还原为Zn的起始还原电位约为-1.05V。阴极峰值电流与扫描速率的平方根之间存在线性关系,因此表明反应受扩散控制机制控制。锌的电沉积遵循三维(3D)瞬时成核和各种还原电位的生长机理。扫描电子显微镜(SEM)图像显示在较低的施加电势下会形成六边形的Zn颗粒,而在较高的施加电势下会沉积锌金属的板状结构。 X射线衍射(XRD)和能量色散光谱(EDS)分析证实了在铜阴极上存在高纯锌金属电沉积。 (C)2014 Elsevier Ltd.保留所有权利。

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